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◆ Advanced Functional Materials2026-03-28· Materials science

Photo‐Driven Selective Sulfur Oxidation Enables Dual Modulation of Surface Reconstruction and Sulfate Anchoring for Enhanced Photoelectrochemical Properties

Jiangping Jing, Y. L. Zhou, Zhuoyuan Chen, Zhuoyuan Chen, Li Ma, Jian Hou, Ziqi Chen, Ziqi Chen, Chang Feng

原始摘要(英文原文)· Original abstract
ABSTRACT This study presents a novel photo‐driven selective oxidation (PDSO) strategy for the synchronous modulation of surface structure and SO 4 2− group anchoring in In 2 S 3 /MgIn 2 S 4 (IS/MIS) heterostructure. Gradient sulfur vacancies were first engineered via hydrothermal synthesis and annealing to direct hole migration. Subsequently, a photo‐assisted chronoamperometric treatment was employed to selectively oxidize S 2− to SO 4 2− , which concurrently triggered Mg 2+ leaching and surface reconstruction. This dual modulation resulted in an over 200% expansion of the electrochemical active surface area and the effective anchoring of SO 4 2− species, which effectively promoted the participation of photogenerated holes in interface redox reactions via surface trap states. The optimized selective oxidation of rearranged‐S v IS/MIS (SO‐R‐IS/MIS) photoanode exhibited a remarkable 410 mV negative shift in onset potential (to 0.24 V vs. RHE) and delivered a photocurrent density of 7.8 mA cm −2 at 1.23 V vs. RHE. This work establishes a paradigm for precision surface engineering of photoanodes via photo‐driven selective reconstruction.
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Photo‐Driven Selective Sulfur Oxidation Enables Dual Modulation of Surface Reconstruction and Sulfate Anchoring for Enhanced Photoelectrochemical Properties — 科研速览 Science Skim